Departments of Physiology, Tokai University School of Medicine, Kanagawa, Japan.
Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama, Japan.
PLoS One. 2024 May 28;19(5):e0303910. doi: 10.1371/journal.pone.0303910. eCollection 2024.
Dach1 is highly expressed in normal podocytes, but this expression rapidly disappears after podocyte injury. To investigate the role of Dach1 in podocytes in vivo, we analyzed global, podocyte-specific, and inducible Dach1 knockout mice. Global Dach1 knockout (Dach1-/-) mice were assessed immediately after birth because they die within a day. The kidneys of Dach1-/- mice were slightly smaller than those of control mice but maintained a normal structure and normal podocyte phenotypes, including ultrastructure. To study the role of Dach1 in mature podocytes, we generated Dach1 knockout mice by mating Dach1fl/fl mice with Nphs1-Cre or ROSA-CreERT2 mice. Due to inefficient Cre recombination, only a small number of podocytes lacked Dach1 staining in these mice. However, all eleven Nphs1-Cre/Dach1fl/fl mice displayed abnormal albuminuria, and seven (63%) of them developed focal segmental glomerulosclerosis. Among 13 ROSA-CreERT2/Dach1fl/fl mice, eight (61%) exhibited abnormal albuminuria after treatment with tamoxifen, and five (38%) developed early sclerotic lesions. These results indicate that while Dach1 does not determine the fate of differentiation into podocytes, it is indispensable for maintaining the normal integrity of mature podocytes.
Dach1 在正常足细胞中高度表达,但在足细胞损伤后这种表达迅速消失。为了研究 Dach1 在体内足细胞中的作用,我们分析了全局、足细胞特异性和诱导型 Dach1 敲除小鼠。全局 Dach1 敲除(Dach1-/-)小鼠在出生后立即进行评估,因为它们在一天内死亡。 Dach1-/- 小鼠的肾脏略小于对照小鼠,但保持正常结构和正常足细胞表型,包括超微结构。为了研究 Dach1 在成熟足细胞中的作用,我们通过 Dach1fl/fl 小鼠与 Nphs1-Cre 或 ROSA-CreERT2 小鼠交配生成 Dach1 敲除小鼠。由于 Cre 重组效率低下,这些小鼠中只有少数足细胞缺乏 Dach1 染色。然而,所有 11 只 Nphs1-Cre/Dach1fl/fl 小鼠均出现异常白蛋白尿,其中 7 只(63%)发生局灶节段性肾小球硬化。在 13 只 ROSA-CreERT2/Dach1fl/fl 小鼠中,有 8 只(61%)在用他莫昔芬治疗后出现异常白蛋白尿,有 5 只(38%)出现早期硬化病变。这些结果表明,虽然 Dach1 不决定分化为足细胞的命运,但它对于维持成熟足细胞的正常完整性是必不可少的。